Bigger surface area of smaller machinery: Difference between revisions
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== Related == | == Related == | ||
* [[Common critique towards diamondoid atomically precise manufacturing and technology]] | * '''[[Common critique towards diamondoid atomically precise manufacturing and technology]]''' | ||
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* '''[[Twice the surface area of half the volume]]''' | * '''[[Twice the surface area of half the volume]]''' | ||
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* [[Scaling laws by degree of knownness]] | * [[Scaling laws by degree of knownness]] | ||
=== Oxydation, | === Oxydation, Hydrolysation, …=== | ||
* [[Oxidation]] & [[Fruit interior analogy]] | * [[Oxidation]] & [[Fruit interior analogy]] | ||
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[[Higher bearing area of smaller machinery]] <br> | [[Higher bearing area of smaller machinery]] <br> | ||
''' | '''Solutions:''' <br> | ||
(A) needing much less nanomachinery due to the scaling law of '''[[higher throughput of smaller machinery]]''' <br> | (A) needing much less nanomachinery due to the scaling law of '''[[higher throughput of smaller machinery]]''' <br> | ||
(B) [[Increasing bearing area to decrease friction]] … <br> | (B) [[Increasing bearing area to decrease friction]] … <br> | ||
Revision as of 11:38, 13 August 2026
Related
- Hundredfold smaller frictionlosses from tenfold slowdown
- Higher throughput of smaller machinery
- Scaling laws by degree of knownness
Oxydation, Hydrolysation, …
- Oxidation & Fruit interior analogy
- Atomically precise surface passivation & Passivation (disambiguation)
Friction losses
Concern:
Higher bearing area of smaller machinery
Solutions:
(A) needing much less nanomachinery due to the scaling law of higher throughput of smaller machinery
(B) Increasing bearing area to decrease friction …
… using the scaling law of hundredfold smaller frictionlosses from tenfold slowdown
… via things like infinitesimal bearings and metamaterials employing such principles.